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普鲁士蓝基纳米材料在生物医学应用中的制备进展。

Progress in the preparation of Prussian blue-based nanomaterials for biomedical applications.

机构信息

State Key Laboratory of Bioelectronics, Jiangsu Key Laboratory for Biomaterials and Devices, School of Biological Science and Medical Engineering, Southeast University, Nanjing 210009, P. R. China.

Medical School, Nanjing University, Nanjing 210093, P. R. China.

出版信息

J Mater Chem B. 2023 Jun 21;11(24):5272-5300. doi: 10.1039/d2tb02617a.

DOI:10.1039/d2tb02617a
PMID:36748242
Abstract

Prussian blue (PB) is composed of the coordination network of Fe-CN-Fe mixed valence state as a classic metal complex, which includes a C atom and Fe (low spin), N atom and Fe (high spin). PB and its analogues (PBA) have excellent biosafety, good magnetic properties, outstanding photothermal properties and the ability to mimic enzymatic behaviors due to their stable structure, tunable size, controllable morphology, abundant modification methods and excellent physicochemical properties. They have received increasing research interest and have shown promising applications in the biomedical field. Here, progress in the preparation of PB-based nanomaterials for biomedical applications is summarized and discussed. The preparation strategies, traditional synthesis and emerging preparation methods of PB are summarized systematically in this review. The design and preparation of PBA, PB(PBA)-based hollow structures and PB(PBA)-based composites are also included. While introducing the preparation status, some PB-based nanomaterials that have performed well in specific biomedical fields are emphasized. More importantly, the key factors and future development of PB for the clinical translation as multifunctional nanomaterials are also discussed. This review provides a reference for the design and biomedical application of PB-based nanomaterials.

摘要

普鲁士蓝(PB)由 Fe-CN-Fe 混合价态的配位网络组成,是一种经典的金属配合物,其中包含 C 原子和 Fe(低自旋)、N 原子和 Fe(高自旋)。由于其稳定的结构、可调的尺寸、可控的形态、丰富的修饰方法和优异的物理化学性质,PB 及其类似物(PBA)具有出色的生物安全性、良好的磁性、优异的光热性能和模拟酶行为的能力,因此受到越来越多的研究关注,并在生物医学领域表现出了广阔的应用前景。本文总结并讨论了用于生物医学应用的基于 PB 的纳米材料的制备进展。本文系统地总结了 PB 纳米材料的制备策略、传统合成方法和新兴制备方法。还包括 PBA、PB(PBA)空心结构和 PB(PBA)复合材料的设计和制备。在介绍制备现状的同时,强调了一些在特定生物医学领域表现出色的基于 PB 的纳米材料。更重要的是,还讨论了 PB 作为多功能纳米材料进行临床转化的关键因素和未来发展。本文为基于 PB 的纳米材料的设计和生物医学应用提供了参考。

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Investigation into recent advanced strategies of reactive oxygen species-mediated therapy based on Prussian blue: Conceptualization and prospect.基于普鲁士蓝的活性氧介导疗法近期先进策略的研究:概念化与展望
Bioact Mater. 2025 Feb 13;48:71-99. doi: 10.1016/j.bioactmat.2025.01.023. eCollection 2025 Jun.
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NGF-releasing Prussian blue nanoparticles for nerve injury repair of lumbar disc herniation.用于腰椎间盘突出症神经损伤修复的释放神经生长因子的普鲁士蓝纳米颗粒
Front Chem. 2024 Dec 18;12:1503330. doi: 10.3389/fchem.2024.1503330. eCollection 2024.
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Prussian-Blue-Nanozyme-Enhanced Simultaneous Immunochromatographic Control of Two Relevant Bacterial Pathogens in Milk.
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Prussian blue nanotechnology in the treatment of spinal cord injury: application and challenges.普鲁士蓝纳米技术在脊髓损伤治疗中的应用与挑战
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